(a) Find the average velocity in the time interval t-3.00 s to t-8.00 s. m/s (b) Determine the instantaneous velocity at t-4.00 s (where the tangent line touches the curve) by measuring the slope of the tangent line shown in the graph. m/s (c) At what value of t is the velocity zero?
(a) Find the average velocity in the time interval t-3.00 s to t-8.00 s. m/s (b) Determine the instantaneous velocity at t-4.00 s (where the tangent line touches the curve) by measuring the slope of the tangent line shown in the graph. m/s (c) At what value of t is the velocity zero?
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
Transcribed Image Text:A position-time graph for a particle moving along the x axis is shown in the figure. The divisions along the horizontal axis
represent 1.00 s and the divisions along the vertical axis represent 2.0 m.
x (m)
(a) Find the average velocity in the time interval t-3.00 s to t-8.00 s.
m/s
(b) Determine the instantaneous velocity at t-4.00 s (where the tangent line touches the curve) by measuring the
slope of the tangent line shown in the graph.
m/s
(c) At what value of t is the velocity zero?
S
-t(s)
Need Help?
Read It
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